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    • 1. 发明专利
    • Mechanism for adjusting actuation force, and mechanism for transmitting operation force
    • 调整执行力的机制和发送作战力的机制
    • JP2010166492A
    • 2010-07-29
    • JP2009008902
    • 2009-01-19
    • Alps Electric Co Ltdアルプス電気株式会社
    • TAKAHASHI HIROKOKASASHIMA MASAO
    • H04R3/00H01C10/00
    • PROBLEM TO BE SOLVED: To provide a mechanism for adjusting actuation force allowing an operator to recognize the state of adjustment of actuation force and for preventing breakage even if strong operation force is applied, and to provide a mechanism for transmitting operation force.
      SOLUTION: The mechanism for adjusting actuation force includes an actuation force-adjusting plate spring 25, and the mechanism for transmitting operation force which transmits operation force to the actuation force-adjusting plate spring 25 to adjust braking force. The mechanism for transmitting operation force includes: a worm 51 rotating by receiving operation force; a worm wheel 52 connected to the worm 51; a connection member 53 frictionally contacting the worm wheel 52 and rotating by receiving the rotation of the worm wheel 52; and a cam 27 integrally-rotatably connected to the connection member 53. The rotation of the cam 27 is restricted in a predetermined rotating range.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种用于调节致动力的机构,其允许操作者识别致动力的调节状态,并且即使施加较强的操作力也能防止断裂,并且提供用于传递操作力的机构。 解决方案:用于调节致动力的机构包括致动力调节板弹簧25和用于传递操作力的机构,其将操作力传递到致动力调节板弹簧25以调节制动力。 用于传递操作力的机构包括:通过接收操作力旋转的蜗杆51; 与蜗杆51连接的蜗轮52; 连接构件53摩擦地接触蜗轮52并通过接收蜗轮52的旋转而旋转; 以及与连接构件53一体地可旋转地连接的凸轮27.凸轮27的旋转被限制在预定的旋转范围内。 版权所有(C)2010,JPO&INPIT
    • 2. 发明专利
    • Leaf spring attaching structure and fader
    • LEAF弹簧连接结构和坡度
    • JP2010171299A
    • 2010-08-05
    • JP2009013937
    • 2009-01-26
    • Alps Electric Co Ltdアルプス電気株式会社
    • TAKAHASHI HIROKOKASASHIMA MASAO
    • H01C10/00
    • PROBLEM TO BE SOLVED: To provide a leaf spring attaching structure and a fader, that can lower manufacturing costs and improve durability.
      SOLUTION: The leaf spring attaching structure includes a slide member 13 capable of reciprocating and a leaf spring 23 for operating force adjustment which is fitted to a fitting surface 31 of the slide member 13 and applies braking force to the slide member 13, wherein the slide member 13 has a lock portion 32 for locking at least a part of the leaf spring 23 for operating force adjustment not to separate from the fitting surface 31, and a projection portion 33 projecting from the fitting surface 31, and the leaf spring 23 for operating force adjustment has a pair of clamp projections 42c for clamping the projection portion 33, and is fitted to the slide member 13 by clamping the projection portion 33 while locked to the lock portion 32.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种板簧连接结构和推子,可以降低制造成本并提高耐久性。 解决方案:板簧安装结构包括能够往复运动的滑动构件13和用于操作力调节的板簧23,其被安装到滑动构件13的装配表面31并向滑动构件13施加制动力, 其中,滑动构件13具有用于锁定片簧23的至少一部分的锁定部分32,用于操作力调节而不与配合表面31分离,以及从配合表面31突出的突出部分33和板簧 23用于操作力调节具有一对用于夹持突出部33的夹紧突起42c,并且通过在锁定到锁定部32的同时夹紧突出部33而与滑动构件13嵌合。(C)2010 ,JPO&INPIT
    • 3. 发明专利
    • Triaxial type electronic compass, and azimuth detecting method using same
    • 三叉型电子指南针和使用相同的AZIMUTH检测方法
    • JP2006113019A
    • 2006-04-27
    • JP2004303148
    • 2004-10-18
    • Alps Electric Co Ltdアルプス電気株式会社
    • TAKAHASHI HIROKOUMEDA YUICHI
    • G01C17/26G01R33/02
    • PROBLEM TO BE SOLVED: To provide a triaxial type electronic compass capable of detecting precisely an azimuth in response to all the attitudes without being restricted by attitude angles, and an azimuth detecting method using the same.
      SOLUTION: When two candidates α1, α2 exist in solution of the attitude angles calculated from magnetic data X, Y, Z, the azimuth is detected precisely in response to all the attitudes, by selecting the one proper attitude angle (α1 or α2) from on the first processing of selecting the proper attitude angle, based on a variation in the attitude angle calculated time-serially, the second processing of selecting the proper attitude angle, referring to the azimuth calculated just before and the attitude angle used in that time, and the third processing of selecting the proper attitude angle, on a ratio of the azimuth calculated just before to a differential value of the attitude angle used in that time.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种三轴型电子罗盘,其能够以不受姿态角度限制的方式精确地检测所有姿态的方位角,以及使用其的方位检测方法。 解决方案:当从磁数据X,Y,Z计算的姿态角解决了两个候选者α1,α2时,通过选择一个适当的姿态角(α1或 α2)从基于时间顺序计算的姿态角的变化的第一处理中选择适当的姿态角的第二处理,参考刚才算出的方位角和姿态角 该时间,以及选择正确的姿态角度的第三处理,即刚刚计算的方位角与该时间段中使用的姿态角的差分值的比率。 版权所有(C)2006,JPO&NCIPI
    • 4. 发明专利
    • Magnet fixing structure
    • 磁铁固定结构
    • JP2009128271A
    • 2009-06-11
    • JP2007305345
    • 2007-11-27
    • Alps Electric Co Ltdアルプス電気株式会社
    • TAKAHASHI HIROKOKASASHIMA MASAOTANI HIROMITSUASANO MASAHIRO
    • G01D5/12G01R33/09H01H36/00
    • PROBLEM TO BE SOLVED: To reduce the number of processes for fixing a magnet while reducing the number of part items.
      SOLUTION: A structure is equipped with a casing 2 (a first case 21, a second case 22) formed of a soft magnetic material, and magnets 51, 52 which are fixed to the fixing surface of the casing 2 (the first case 21, the second case 22) by its own magnetic attraction force. Projections 8 for positioning the magnets 51, 52 are formed on the fixing surface of the casing 2 (the first case 21, the second case 22). The magnets 51, 52 have lengthy forms. At least the two projections 8 are formed on the fixing surface of the casing 2 where respective ends of the magnets 51, 52 are located.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了减少固定磁体的处理次数,同时减少零件数量。 解决方案:结构配备有由软磁性材料形成的壳体2(第一壳体21,第二壳体22)和固定到壳体2的固定表面(第一壳体22)的磁体51,52 壳体21,第二壳体22)通过其自身的磁吸引力。 用于定位磁体51,52的突出部8形成在壳体2的固定面(第一壳体21,第二壳体22)上。 磁体51,52具有冗长的形式。 至少两个突起8形成在壳体2的固定表面上,其中磁体51,52的各个端部位于其上。 版权所有(C)2009,JPO&INPIT
    • 5. 发明专利
    • Portable device and autonomous navigation calculation method
    • 便携式设备和自动导航计算方法
    • JP2012155477A
    • 2012-08-16
    • JP2011013223
    • 2011-01-25
    • Alps Electric Co Ltdアルプス電気株式会社
    • TAKAHASHI HIROKO
    • G08G1/005G01C21/00
    • PROBLEM TO BE SOLVED: To provide an autonomous navigation calculation method mounted on a portable device 1 capable of decreasing a load on a storage capacity and shortening processing time by reducing a processing data amount as well as processing steps.SOLUTION: The present invention provides a portable device 1 and an autonomous navigation calculation method capable of calculating a movement direction without requiring a large storage capacity and long processing time by adding a movement direction calculation section 33 having a simple calculation method to a conventional portable device mounted with a geomagnetic sensor and an acceleration sensor.
    • 要解决的问题:提供一种安装在能够通过减少处理数据量以及处理步骤来减少存储容量的负载并缩短处理时间的便携式设备1上的自主导航计算方法。 解决方案:本发明提供了一种便携式设备1和自主导航计算方法,其能够通过将具有简单的计算方法的移动方向计算部33添加到具有简单的计算方法的计算移动方向而不需要大的存储容量和长的处理时间 安装有地磁传感器和加速度传感器的常规便携式设备。 版权所有(C)2012,JPO&INPIT
    • 7. 发明专利
    • Triaxial electronic compass, and azimuth detecting method using the same
    • 三电子电子指南针和使用它的AZIMUTH检测方法
    • JP2006337333A
    • 2006-12-14
    • JP2005165742
    • 2005-06-06
    • Alps Electric Co Ltdアルプス電気株式会社
    • TAKAHASHI HIROKO
    • G01C17/28G01C17/38G01R33/02
    • PROBLEM TO BE SOLVED: To provide a triaxial electronic compass dispensing with an inclination sensor, acquiring an azimuth by a simple algorithm, and suitable for compactification/weight reduction, and also to provide an azimuth detecting method using the same.
      SOLUTION: In this triaxial electronic compass provided with an orthogonal coordinate system comprising three axes orthogonal each other, the magnetic declination θ with respect to the magnetic north is found using triaxial-directional magnetic data X, Y, Z acquired from the magnetic sensor, and a depression angle η obtained by a means for acquiring the depression angle η and a declination angle D. When two candidates for the magnetic declination θ exist, processing for determining the proper magnetic declination θ is carried out by signs of variation ratios per unit time of the triaxial-directional magnetic data X, Y, Z acquired from the three axes of the electronic compass. A magnetic declination θ' with respect to the true north is found thereafter with computation, using the magnetic declination θ and the declination angle D.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种三轴电子罗盘分配倾斜传感器,通过简单的算法获取方位角,并且适合于紧凑化/减轻重量,并且还提供使用它的方位检测方法。 解决方案:在具有包括三个彼此正交的轴的正交坐标系的三轴电子罗盘中,使用从磁性获得的三轴方向磁数据X,Y,Z找到相对于磁北的磁偏角θ 传感器,以及通过用于获取俯角θ和偏角D的装置获得的俯角θ。当存在磁偏角θ的两个候选时,用于确定适当的磁偏角θ的处理通过每个 从电子罗盘的三个轴获得的三轴方向磁数据X,Y,Z的单位时间。 使用磁偏角θ和偏角D,计算后,发现相对于真北的磁偏角θ'。(C)2007,JPO&INPIT
    • 8. 发明专利
    • Thin-film magnetoresistive element and thin-film magnetic sensor
    • 薄膜电磁元件和薄膜磁传感器
    • JP2009145228A
    • 2009-07-02
    • JP2007323479
    • 2007-12-14
    • Alps Electric Co Ltdアルプス電気株式会社
    • TAKAHASHI HIROKO
    • G01R33/09H01F10/08H01L43/08
    • PROBLEM TO BE SOLVED: To provide a thin-film magnetoresistive element for responding to an omnidirectional external magnetic field in a plane, detecting the direction of the external magnetic field, and used for a switch element, and a practical thin-film magnetic sensor using it.
      SOLUTION: The thin-film magnetoresistive element has an inner soft magnetic film 2 formed on an insulating substrate 1, an outer soft magnetic film 3, the thin-film magnetoresistive element 4, and required wiring 5. A magnetoresistive effect film 4 is formed in a gap 6 between an outer edge of the inner soft magnetic film 2 and an inner edge of the outer soft magnetic film 3. The outer soft magnetic film 3 is divided into four fan-shaped outer soft magnetic films 3a, 3b, 3c, 3d by cutouts 7a, 7b, 7c, 7d formed in directions that are mutually orthogonal. The thin-film magnetic sensor includes a bridge circuit, having the thin-film magnetoresistive element as a variable resistor section.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供用于响应于平面中的全向外部磁场的薄膜磁阻元件,检测外部磁场的方向并用于开关元件,以及实用的薄膜 磁传感器使用它。 解决方案:薄膜磁阻元件具有形成在绝缘基板1,外部软磁膜3,薄膜磁阻元件4和所需布线5上的内部软磁性膜2.磁阻效应膜4 形成在内部软磁性膜2的外缘和外部软磁性膜3的内缘之间的间隙6中。外部软磁性膜3被分成四个扇形外部软磁性膜3a,3b, 3c,3d由在相互正交的方向上形成的切口7a,7b,7c,7d。 薄膜磁传感器包括具有作为可变电阻器部分的薄膜磁阻元件的桥接电路。 版权所有(C)2009,JPO&INPIT
    • 9. 发明专利
    • Activation force adjusting apparatus
    • 激活力调节装置
    • JP2009117775A
    • 2009-05-28
    • JP2007292382
    • 2007-11-09
    • Alps Electric Co Ltdアルプス電気株式会社
    • TAKAHASHI HIROKOKASASHIMA MASAO
    • H01C10/00
    • PROBLEM TO BE SOLVED: To adjust activation force from outside with ease even when a plurality of devices are arranged in line.
      SOLUTION: An activation force adjusting apparatus has: a sliding member 3 reciprocating in a constant direction; a first shaft 61 holding the sliding member 3 movably; an activation force adjusting plate spring 71 pressuring the sliding member 3 to the first shaft 61; and a cam 72 adjusting a pressuring force of the activation force adjusting plate spring 71 to the sliding member 3 depending on an operation from outside. An operation surface receiving the operation from outside in the cam 72 is arranged toward a moving direction of the sliding member 3.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:即使当多个装置排成一行时,也容易地从外部调节激活力。 解决方案:激活力调节装置具有:滑动构件3沿恒定方向往复运动; 保持滑动构件3可动的第一轴61; 激活力调节板弹簧71将滑动构件3加压到第一轴61; 以及根据来自外部的操作将起动力调节板弹簧71的加压力调整到滑动构件3的凸轮72。 在滑动部件3的移动方向上配置有从凸轮72的外部接收动作的操作面。(C)2009,JPO&INPIT
    • 10. 发明专利
    • Thin-film magnetoresistive element and thin-film magnetic sensor
    • 薄膜电磁元件和薄膜磁传感器
    • JP2008003072A
    • 2008-01-10
    • JP2006285049
    • 2006-10-19
    • Alps Electric Co Ltdアルプス電気株式会社
    • TAKAHASHI HIROKOHATAUCHI TAKASHI
    • G01R33/09H01F41/14H01L43/08
    • PROBLEM TO BE SOLVED: To provide thin-film magnetoresistive element which shows high isotropic response to in-plane directional magnetic field and is available as a switching device, and also practical thin film magnetic sensor using this element.
      SOLUTION: The thin-film magnetoresistive element is designed that it has inside soft magnetic film 2 formed on an insulating substrate 1, outside soft magnetic film 3, thin-film magnetoresistive element 4 and required wiring 5, in which magnetoresistive effect film 4 is formed in regularly-spaced clearance 6 formed between outer edge section of the inside soft magnetic film 2 and the inner edge section of the outside soft magnetic film 3. The thin-film magnetic sensor is designed to build bridge circuit allowing this thin-film magnetoresistive element to be variable resistor. Radially-extending slit-shaped notch section 8 can also be formed on the outside soft magnetic film 3.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供对面内方向磁场显示出高均匀响应的薄膜磁阻元件,并且可用作开关器件,以及使用该元件的实用薄膜磁传感器。 解决方案:薄膜磁阻元件被设计为具有形成在绝缘基板1,外部软磁膜3,薄膜磁阻元件4和所需布线5上的软磁膜2内,其中磁阻效应膜 4形成在形成在内侧软磁性膜2的外缘部与外部软磁性膜3的内缘部之间的规则间隔的间隙6中。薄膜磁传感器被设计成构成桥接电路, 薄膜磁阻元件为可变电阻器。 径向延伸的狭缝状切口部分8也可以形成在外部软磁膜3上。版权所有(C)2008,JPO&INPIT